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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Equivalent Damping Control of Radial Twist Motion for Permanent Magnetic Bearings Based on Radial Position Variation
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Equivalent Damping Control of Radial Twist Motion for Permanent Magnetic Bearings Based on Radial Position Variation

机译:基于径向位置变化的永磁轴承径向扭转运动的等效阻尼控制

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摘要

To effectively reject the influence of the low damping property of permanent magnetic bearings and improve the twist motion stability, this paper presents a novel equivalent damping control strategy. First, the relationship between the restoring torque and the radial translation of permanent magnetic rings is pointed out through finite-element analysis. The analysis indicates that the restoring torque increases with the radial translation of the rotor off its origin. Then, the radial translation variation rule is proposed, which can provide equivalent damping for the twist motion. Subsequently, a bang–bang controller is designed enlightened by the variation rule. Moreover, the stability of the bang–bang control is verified using energy consumption arguments, which is similar to the Lyapunov method. Finally, simulation and experimental results are presented to demonstrate the effectiveness of the proposed method.
机译:为了有效地抑制永磁轴承低阻尼性能的影响并提高扭转运动的稳定性,本文提出了一种新颖的等效阻尼控制策略。首先,通过有限元分析指出了恢复转矩与永磁环径向平移之间的关系。分析表明,恢复转矩随着转子径向偏离其原点而增加。然后,提出了径向平移变化规律,可以为扭转运动提供等效的阻尼。随后,通过变化规则设计了一个爆炸控制器。此外,使用能耗参数验证了爆炸控制的稳定性,这与Lyapunov方法类似。最后,通过仿真和实验结果证明了该方法的有效性。

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